English

Singularities and internal rotational dynamics of electron beams

Quantum Physics 2016-12-21 v1

Abstract

We study the internal rotational dynamics of electronic beams in relation to the phase singularities of their wave functions. Given their complex singularity structure, Hermite-Gaussian beams and other superpositions of Laguerre-Gaussian modes are studied here. We show that by inspecting the lowest non-vanishing terms of the wave function near the singularity it is possible to infer the structure of the Bohmian streamlines. Conversely, starting from a map of the electron's Bohmian velocities, we demonstrate that it is possible to derive the form of the electron's wave function near the singularity. We outline a procedure that could yield an experimental method to determine the main parameters of the electron's wave function close to a singularity.

Keywords

Cite

@article{arxiv.1608.00688,
  title  = {Singularities and internal rotational dynamics of electron beams},
  author = {D. Velasco-Martínez and V. G. Ibarra-Sierra and J. C. Sandoval-Santana and J. L. Cardoso and A. Kunold},
  journal= {arXiv preprint arXiv:1608.00688},
  year   = {2016}
}

Comments

16 pages, 17 figures, 1 table